Three blocks are connected by two cords, and are arranged as shown above. (The pulleys are frictionless Assuming that the blocks start at rest, find the horizontal force P (See diagram) that is required in order that Block A VA = 16 ft/s (may) after achieves a Velocity of V 2.5 s. Assume that the tensions T, and T₂, in cords AB and BC. respectively, are constant. Use the Principle of Impulse and Momentum. You will need to use Newton's Second Law to first find the normal reaction on Block A. Hint: You will need to apply PIM individually to each block.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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4
= 0.45
B
no friction
Three blocks are connected by two cords,
W₁ =
= 616
W₂
W.
=
с
12 16
8 16²
P = TBD
two cords, and are arranged as shown above.
(The pulleys are
achieves a
- frictionless Assuming that the blocks start at rest, find the
horizontal force P (See diagram) that is required in order that Block A
Velocity of V₁ = 16 ft/s (may) after 2 2.5 s. Assume that
the tensions T, and T₂, in cords AB and BC. respectively, are constant.
Use the Principle of Impulse and Momentum. You will need to use Newton's
Second Law to first find the normal reaction on Block A, Hint: You
will need to apply PIM individually to each block.
Transcribed Image Text:4 = 0.45 B no friction Three blocks are connected by two cords, W₁ = = 616 W₂ W. = с 12 16 8 16² P = TBD two cords, and are arranged as shown above. (The pulleys are achieves a - frictionless Assuming that the blocks start at rest, find the horizontal force P (See diagram) that is required in order that Block A Velocity of V₁ = 16 ft/s (may) after 2 2.5 s. Assume that the tensions T, and T₂, in cords AB and BC. respectively, are constant. Use the Principle of Impulse and Momentum. You will need to use Newton's Second Law to first find the normal reaction on Block A, Hint: You will need to apply PIM individually to each block.
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